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This paper reports sufficient conditions to achieve bounded pinning synchronisation in complex networks of non-identical systems. The conditions are used to derive an easy-to-use algorithm for control design where the selection of the control gain is performed by solving a linear optimization problem. Experimental validation is provided of the theoretical results.
This paper is concerned with the theoretical and experimental analysis of synchronization and pinning control of networks of non-identical Chua's circuits. The design and implementation is presented of an appropriate setup to carry out experiments on networks of these nonlinear circuits with easily reconfigurable parameter values. Then, the theoretical expectations are validated of the so-called Extended...
This paper is concerned with the experimental analysis of synchronization in networks of non identical Chua's circuits, with emphasis on robustness. We validate the theoretical expectations of the so-called Extended Master Stability Function approach by numerical simulations and experiments. We show that the EMSF is an effective tool to understand the onset of synchronization in real-world networks...
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